Effect of heat treatment on phase stability, microstructure, and thermal conductivity of plasma-sprayed YSZ

被引:0
|
作者
R. W. Trice
Y. Jennifer Su
J. R. Mawdsley
K. T. Faber
A. R. De Arellano-López
Hsin Wang
W. D. Porter
机构
[1] Northwestern University,Department of Materials Science and Engineering, Robert R. McCormick School of Engineering and Applied Science
[2] Universidad de Sevilla,Departamento de Física de la Materia Condensada
[3] Oak Ridge National Laboratory,High Temperature Materials Laboratory
来源
Journal of Materials Science | 2002年 / 37卷
关键词
Zirconia; Thermal Conductivity; Heat Treatment; Y2O3; Phase Stability;
D O I
暂无
中图分类号
学科分类号
摘要
The effects of 50-hour heat treatments at 1000°C, 1200°C, and 1400°C on air plasma-sprayed coatings of 7 wt% Y2O3-ZrO2 (YSZ) have been investigated. Changes in the phase stability and microstructure were investigated using x-ray diffraction and transmission electron microscopy, respectively. Changes in the thermal conductivity of the coating that occurred during heat treatment were interpreted with respect to microstructural evolution. A metastable tetragonal zirconia phase, with a non-equilibrium amount of Y2O3 stabilizer, was the predominant phase in the as-sprayed coating. Upon heating to 1000°C for 50 hours, the concentration of the Y2O3 in the t-zirconia began to decrease as predicted by the Y2O3-ZrO2 phase diagram. The c-ZrO2 phase was first observed after the 50-hour heat treatment at 1200°C; monoclinic zirconia was observed after the 50-hour heat treatment at 1400°C. TEM analysis revealed closure of intralamellar microcracks after the 50-hour/1000°C heat treatment; however, the lamellar morphology was retained. After the 50-hour/1200°C heat treatment, a distinct change was observed in the interlamellar pores; equiaxed grains replaced the long, columnar grains, with some remnant lamellae still observed. No lamellae were observed after the 50-hour/1400°C heat treatment. Rather, the microstructure was equivalent when viewed in either plan view or cross-section, revealing large grains with regions of monoclinic zirconia. Thermal conductivity increased after every heat treatment. It is believed that changes in the intralamellar microcracks and/or interlamellar pores are responsible for the increase in thermal conductivity after the 1000°C and 1200°C heat treatments. The increase in thermal conductivity that occurs after the 50-hour/1400°C heat treatment is proposed to be due to the formation of m-ZrO2, which has a higher thermal conductivity than tetragonal or cubic zirconia.
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页码:2359 / 2365
页数:6
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